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纤维蛋白:血管组织工程中的一种天然可生物降解支架。

Fibrin: a natural biodegradable scaffold in vascular tissue engineering.

作者信息

Shaikh Faisal M, Callanan Anthony, Kavanagh Eamon G, Burke Paul E, Grace Pierce A, McGloughlin Tim M

机构信息

Department of Surgery, Mid-Western Regional Hospital, Limerick, Ireland.

出版信息

Cells Tissues Organs. 2008;188(4):333-46. doi: 10.1159/000139772. Epub 2008 Jun 13.

Abstract

Arterial occlusive disease remains a major health issue in the developed world and a rapidly growing problem in the developing world. Although a growing number of patients are now being effectively treated with minimally invasive techniques, there remains a tremendous pressure on the vascular community to develop a synthetic small-diameter vascular graft with improved long-term patency rates. The field of tissue engineering offers an exciting alternative in the search for living organ replacement structures. Several methodologies have emerged for constructing blood vessel replacements with biological functionality. Common strategies include cell-seeded biodegradable synthetic scaffolds, cell self-assembly, cell-seeded gels and xenogeneic acellular materials. A wide range of materials are being investigated as potential scaffolds for vascular tissue engineering applications. Some are commercialised and others are still in development. Recently, researchers have studied the role of fibrin gel as a three-dimensional scaffold in vascular tissue engineering. This overview describes the properties of fibrin gel in vascular tissue engineering and highlights some recent progress and difficulties encountered in the development of cell fibrin scaffold technology.

摘要

动脉闭塞性疾病在发达国家仍然是一个主要的健康问题,在发展中国家则是一个迅速增长的问题。尽管现在越来越多的患者通过微创技术得到了有效治疗,但血管领域仍面临着巨大的压力,需要开发一种具有更高长期通畅率的合成小口径血管移植物。组织工程领域为寻找活体器官替代结构提供了令人兴奋的替代方案。已经出现了几种构建具有生物功能的血管替代物的方法。常见策略包括细胞接种的可生物降解合成支架、细胞自组装、细胞接种凝胶和异种脱细胞材料。作为血管组织工程应用的潜在支架,正在研究各种各样的材料。一些已经商业化,另一些仍在开发中。最近,研究人员研究了纤维蛋白凝胶作为血管组织工程中三维支架的作用。本综述描述了纤维蛋白凝胶在血管组织工程中的特性,并强调了细胞纤维蛋白支架技术发展中最近取得的一些进展和遇到的困难。

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